POSTER: Fly-Over: A light-weight distributed power-gating mechanism for energy-efficient networks-on-chip

R. Boyapati, Jiayi Huang, Ningyuan Wang, Kyung Hoon Kim, K. H. Yum, Eun Jung Kim
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引用次数: 6

Abstract

Reducing static NoC power consumption is becoming critical for energy-efficient computing as technology scales down since NoCs are devouring a large fraction of the on-chip power budget. We propose Fly-Over (FLOV), a light-weight distributed mechanism for power-gating routers. With simple modifications to the baseline router architecture, FLOV links are facilitated over power-gated routers. A Handshake protocol that allows seamless router power-gating in addition to a dynamic routing algorithm, that provides best-effort minimal path without the necessity for global network information, maintain normal NoC functionality. We evaluate our schemes using synthetic workloads as well as real workloads from PARSEC 2.1 benchmark suite. The results show that FLOV can achieve on average 19.2% latency reduction and 15.9% total energy savings.
海报:飞越:一个轻量级的分布式电源门控机制,用于节能的片上网络
随着技术规模的缩小,减少静态NoC功耗对于节能计算变得至关重要,因为NoC正在吞噬芯片上功率预算的很大一部分。我们提出了一种轻量级的功率门控路由器的分布式机制——飞越(flv)。通过对基准路由器架构的简单修改,FLOV链路可以通过电源门控路由器实现。除了动态路由算法之外,握手协议还允许无缝路由器电源门控,该算法提供了不需要全局网络信息的最佳努力最小路径,维持正常的NoC功能。我们使用PARSEC 2.1基准测试套件中的合成工作负载和实际工作负载来评估我们的方案。结果表明,FLOV可以实现平均减少19.2%的延迟和15.9%的总节能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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